A new type of metalens with the capability to selectively focus narrowband light is reported at different focal planes depending on polarization. Two zone planes with two different focal lengths are spatially multiplexed and encoded in the subwavelength regime with arrays of orthogonal silver nanostructures, which are designed to exhibit strong wavelength- and polarization-dependent scattering profiles. Using this principle, imaging under white-light illumination with independent focal planes is experimentally demonstrated for each polarization at the narrowband resonant wavelength. Furthermore, each focal plane can be dynamically controlled with an output polarizer. In contrast to conventional refractive and diffractive optical elements, f...
Vector beams with phase modulation in a high numerical aperture system are able to break through the...
In this review, we show that by designing the metallic nanostructures, the surface plasmon (SP) focu...
© 2017 Dr. Jasper CaduschPlasmonics provides an opportunity to develop nanoscale optical devices, wh...
A new type of metalens with the capability to selectively focus narrowband light is reported at diff...
Several novel spin-selected dual-wavelength metalenses have been proposed and investigated based on ...
<p>We have proposed an all-dielectric polarization-independent metalens, which can be used for sub-w...
Various optical imaging devices have been significantly developed as commercial products including d...
Metalenses are the practical application of metasurfaces which are ultrathin and contain arrays of s...
The polarization multiplexing technique is a well-established method that improves the communication...
The polarization multiplexing technique is a well-established method that improves the communication...
The polarization multiplexing technique is a well-established method that improves the communication...
The optics and photonics development is currently driven towards nanometer scales. However, diffrac...
Surface plasmons polaritons (SPPs) are light-like waves confined to the interface between a metal an...
In this work, we show our proof-of-concept experiments demonstrating that plasmonics and optical met...
Surface topography and refractive index profile dictate the deterministic functionality of a lens. T...
Vector beams with phase modulation in a high numerical aperture system are able to break through the...
In this review, we show that by designing the metallic nanostructures, the surface plasmon (SP) focu...
© 2017 Dr. Jasper CaduschPlasmonics provides an opportunity to develop nanoscale optical devices, wh...
A new type of metalens with the capability to selectively focus narrowband light is reported at diff...
Several novel spin-selected dual-wavelength metalenses have been proposed and investigated based on ...
<p>We have proposed an all-dielectric polarization-independent metalens, which can be used for sub-w...
Various optical imaging devices have been significantly developed as commercial products including d...
Metalenses are the practical application of metasurfaces which are ultrathin and contain arrays of s...
The polarization multiplexing technique is a well-established method that improves the communication...
The polarization multiplexing technique is a well-established method that improves the communication...
The polarization multiplexing technique is a well-established method that improves the communication...
The optics and photonics development is currently driven towards nanometer scales. However, diffrac...
Surface plasmons polaritons (SPPs) are light-like waves confined to the interface between a metal an...
In this work, we show our proof-of-concept experiments demonstrating that plasmonics and optical met...
Surface topography and refractive index profile dictate the deterministic functionality of a lens. T...
Vector beams with phase modulation in a high numerical aperture system are able to break through the...
In this review, we show that by designing the metallic nanostructures, the surface plasmon (SP) focu...
© 2017 Dr. Jasper CaduschPlasmonics provides an opportunity to develop nanoscale optical devices, wh...